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首页> 外文期刊>International Journal of Integrated Engineering >Effect of Ambient Temperature on Ignition Delay and Biodiesel Derived from Algae
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Effect of Ambient Temperature on Ignition Delay and Biodiesel Derived from Algae

机译:环境温度对藻类点火延迟和生物柴油的影响

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Global warming and energy crises have increased the awareness about eco-friendly fuels and also accelerated the search of alternative fuels. Biodiesel is defined as methyl esters of long chain fatty acids derived from vegetable oils or animal fats or similar which conform to ASTM D6751 specifications for use in diesel engines. However, low temperature combustion mode has attracted widespread attention in particulate matter and NOx emissions reduction simultaneously. Thus, this paper focuses on experimental investigation for the influence of ambient temperature on ignition delay and emission with different types of biodiesel. A Rapid Compression Machine (RCM) is used for simulated the diesel combustion as similar in the real diesel engine. Besides, two types of biodiesel blends, B2 (2 vol%) such as Algae and Jatropha biodiesel were tested on RCM at injection pressure of 130 MPa under different ambient temperatures from 750 K to 1100 K. The experimental results were compared with Palm-Oil biodiesel with blending ratio of 5%, 10% and 15%. Nevertheless, the result indicated that the ignition delay is slowed when ambient temperature is increased. These phenomena can be explained by the thermal properties of fuels. Ignition delay is found to be slower if premixed combustion process is reduced and also higher ambient temperature due to the increased in fuel ignitibility. The emission of NOx increased as the ambient temperature increased to cause highly combustion temperature.
机译:全球变暖和能源危机增加了人们对环保燃料的认识,也加速了对替代燃料的寻找。生物柴油定义为衍生自植物油或动物脂肪或类似物的长链脂肪酸的甲酯,其符合ASTM D6751规格,可用于柴油发动机。然而,低温燃烧模式在颗粒物质和同时减少NOx排放方面引起了广泛关注。因此,本文着重于实验研究环境温度对不同类型生物柴油点火延迟和排放的影响。快速压缩机(RCM)用于模拟柴油燃烧,与实际柴油发动机中的类似。此外,在750 K到1100 K的不同环境温度下,以130 MPa的注射压力在RCM上测试了两种生物柴油混合物,B2(2体积%),如藻类和麻风树生物柴油。将实验结果与Palm-Oil进行了比较。生物柴油,混合比例为5%,10%和15%。然而,结果表明,当环境温度升高时,点火延迟减慢。这些现象可以通过燃料的热特性来解释。如果减少了预混合燃烧过程,则发现点火延迟更慢,并且由于燃料可燃性的提高,点火延迟也更高。 NOx的排放随着环境温度的升高而增加,从而导致燃烧温度升高。

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